The oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) are key catalytic processes for sustainable energy technologies, such as water electrolysis or fuel cells. Here, a novel metal oxide–nanostructured carbon composite is reported, which acts as OER and ORR electrocatalyst under technologically relevant conditions. A facile synthetic process allows the deposition of a molecular manganese vanadium oxide precursor, [Mn4V4O17(OAc)3]3–, on reduced graphene oxide. Simultaneously, the precursor is converted into insoluble nanostructured solid-state Mn–V-oxide catalysts. Control of the synthetic conditions allows tuning of the electrocatalytic properties of the composites, leading to excellent and stable electrochemical reactivit...
Developing cost-effective and durable electrocatalysts for the sluggish oxygen reduction reaction (O...
Hybrid nanomaterials based on manganese, cobalt, and lanthanum oxides of different morphology and ph...
In this work, we explore the interplay between manganese oxide (MnO<sub><i>x</i></sub>) nanomaterial...
The oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) are key catalytic processes ...
The rapid development of renewable-energy technologies such as water splitting, rechargeable metal-a...
A composite of manganese oxide and reduced graphene oxide (rGO) is prepared in a single step electro...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
Electrochemical oxygen reduction and evolution reactions (ORR and OER) play a vital role in the fiel...
Developing low cost oxygen reduction catalysts that perform with high efficiency is highly desirable...
Birnessite MnOx is a close inorganic model of natural oxygen-evolving complex (OEC) that hasbeen wid...
Development of efficient electrocatalyst based on non-precious metal that favors the four-electron p...
The key renewable-energy technologies, such as fuel cells, metal-air batteries, and water electrolys...
It is of vital importance to search for a nonprecious metal based sustainable and efficient oxygen r...
Through direct nanoparticle nucleation and growth on nitrogen doped, reduced graphene oxide sheets a...
Manganese oxides of various structures (α-, β-, and δ-MnO<sub>2</sub> and amorphous) were synthesize...
Developing cost-effective and durable electrocatalysts for the sluggish oxygen reduction reaction (O...
Hybrid nanomaterials based on manganese, cobalt, and lanthanum oxides of different morphology and ph...
In this work, we explore the interplay between manganese oxide (MnO<sub><i>x</i></sub>) nanomaterial...
The oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) are key catalytic processes ...
The rapid development of renewable-energy technologies such as water splitting, rechargeable metal-a...
A composite of manganese oxide and reduced graphene oxide (rGO) is prepared in a single step electro...
International audienceMnOx/C and Me-MnOx/C (Me = Ni, Mg) electrocatalysts prepared by chemical depos...
Electrochemical oxygen reduction and evolution reactions (ORR and OER) play a vital role in the fiel...
Developing low cost oxygen reduction catalysts that perform with high efficiency is highly desirable...
Birnessite MnOx is a close inorganic model of natural oxygen-evolving complex (OEC) that hasbeen wid...
Development of efficient electrocatalyst based on non-precious metal that favors the four-electron p...
The key renewable-energy technologies, such as fuel cells, metal-air batteries, and water electrolys...
It is of vital importance to search for a nonprecious metal based sustainable and efficient oxygen r...
Through direct nanoparticle nucleation and growth on nitrogen doped, reduced graphene oxide sheets a...
Manganese oxides of various structures (α-, β-, and δ-MnO<sub>2</sub> and amorphous) were synthesize...
Developing cost-effective and durable electrocatalysts for the sluggish oxygen reduction reaction (O...
Hybrid nanomaterials based on manganese, cobalt, and lanthanum oxides of different morphology and ph...
In this work, we explore the interplay between manganese oxide (MnO<sub><i>x</i></sub>) nanomaterial...